We present the first analytical inspiral-merger-ringdown gravitational waveforms from black-hole (BH) binaries with non-precessing spins. By matching a post-Newtonian description of the inspiral to a set of numerical calculations performed in full general relativity, we obtain a waveform family with a conveniently small number of physical parameters. The physical content of these waveforms includes the "orbital hang-up" effect, when BHs are spinning rapidly along the direction of the orbital angular momentum. These waveforms will allow us to detect a larger parameter space of BH binary coalescence, to explore various scientific questions related to GW astronomy, and could dramatically improve the expected detection rates of GW detectors
We present the first modeled search for gravitational waves using the complete binary black-hole gra...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from black-hole (BH...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present a prescription for computing gravitational waveforms for the inspiral, merger and ringdow...
We present an analytical waveform family describing gravitational waves (GWs) from the inspiral, mer...
We describe a general procedure to generate spinning, precessing waveforms that include inspiral, me...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
Motivated by the possibility of observing gravitational waves from merging black holes whose spins a...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We investigate the dynamics and gravitational-wave (GW) emission in the binary merger of equal-mass ...
We present the first modeled search for gravitational waves using the complete binary black-hole gra...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from black-hole (BH...
We present the first analytical inspiral-merger-ringdown gravitational waveforms from binary black h...
We present a prescription for computing gravitational waveforms for the inspiral, merger and ringdow...
We present an analytical waveform family describing gravitational waves (GWs) from the inspiral, mer...
We describe a general procedure to generate spinning, precessing waveforms that include inspiral, me...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
Motivated by the possibility of observing gravitational waves from merging black holes whose spins a...
We present a new phenomenological gravitational waveform model for the inspiral and coalescence of n...
We investigate the dynamics and gravitational-wave (GW) emission in the binary merger of equal-mass ...
We present the first modeled search for gravitational waves using the complete binary black-hole gra...
The construction of a model of the gravitational-wave (GW) signal from generic configurations of spi...
We present a new frequency-domain phenomenological model of the gravitational-wave signal from the i...